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A Performance Evaluation Framework for Direction Finding Using BLE AoA/AoD Receivers

机译:使用BLE AOA / AOD接收器的方向查找性能评估框架

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摘要

Bluetooth low energy (BLE) has been significantly contributed to the Internet of Things applications due to its advantages, such as low power consumption and scalability. To further expand its applications, BLE has adopted the Angle of Arrival (AoA) and the angle of departure (AoD) to improve the accuracy in direction finding (DF). The AoA/AoD is calculated using the phase difference (PD) between slots in the received BLE data. The PD performance of BLE receiver (RX) in all directions should be evaluated in detail because it directly determines the accuracy of AoA/AoD. In the traditional test method, the reference PD is converted by an antenna array with switches, which is inaccurate due to the conversion errors and path mismatches. Moreover, because of the mechanical rotation of the turntable, the test processing is very time consuming. This article proposes a BLE test waveform generation method that directly includes the reference PD. A commonly used vector signal generator (VSG) is the only required instrument in the evaluation. The compact test setup not only eliminates the requirement of antenna array, switch, turntable, and anechoic chamber but also eliminates the measurement errors caused by these devices. After creating and downloading all BLE test waveforms with reference PD in the range of -180 degrees to 180 degrees by user-defined steps, the PD performance of BLE RX can be quickly evaluated by switching the test waveforms using commands or running them in the sequence mode. Furthermore, three enhanced test cases with automatic test procedures are proposed to evaluate the detailed PD accuracy of BLE RX under the low signal-to-noise ratio (SNR), carrier frequency offset, and modulation frequency deviation environments. Experimental results show that the PD error of the proposed method is 0.19 degrees, and it needs 360 ms to evaluate the PD accuracy of CC2640R2F in all directions in 1 degrees steps.
机译:由于其优点,如低功耗和可扩展性,蓝牙低能量(BLE)已被显着促进应用互联网应用。为了进一步扩展其应用,BLE采用了到达角度(AOA)和偏离角度(AOD)以提高方向发现(DF)的准确性。使用接收的BLE数据中的时隙之间的相位差(PD)计算AOA / AOD。应该详细评估所有方向上的BLE接收器(Rx)的PD性能,因为它直接确定AOA / AOD的准确性。在传统的测试方法中,参考PD由带有开关的天线阵列转换,由于转换误差和路径不匹配导致的开关是不准确的。而且,由于转盘的机械旋转,测试处理非常耗时。本文提出了一种直接包括参考PD的BLE测试波形生成方法。常用的矢量信号发生器(VSG)是评估中唯一所需的仪器。紧凑型测试设置不仅消除了天线阵列,开关,转盘和AneChice室的要求,还消除了这些设备引起的测量误差。通过用户定义的步骤在-180度的参考PD范围内创建和下载所有BLE测试波形到180度,通过使用命令切换测试波形或在序列中运行它们来快速评估BLE Rx的PD性能模式。此外,提出了三种具有自动测试程序的增强测试用例,以评估在低信噪比(SNR),载波频率偏移和调制频率偏差环境下的BLE Rx的详细PD精度。实验结果表明,所提出的方法的PD误差为0.19度,需要360ms,以在1度步骤中评估CC2640R2F的PD精度。

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